Reactivating hippocampal-mediated memories during reconsolidation to disrupt fear

Author:

Grella Stephanie L.ORCID,Fortin Amanda H.,Ruesch Evan,Bladon John H.ORCID,Reynolds Leanna F.,Gross Abby,Shpokayte Monika,Cincotta Christine,Zaki Yosif,Ramirez SteveORCID

Abstract

AbstractMemories are stored in the brain as cellular ensembles activated during learning and reactivated during retrieval. Using the Tet-tag system in mice, we label dorsal dentate gyrus neurons activated by positive, neutral or negative experiences with channelrhodopsin-2. Following fear-conditioning, these cells are artificially reactivated during fear memory recall. Optical stimulation of a competing positive memory is sufficient to update the memory during reconsolidation, thereby reducing conditioned fear acutely and enduringly. Moreover, mice demonstrate operant responding for reactivation of a positive memory, confirming its rewarding properties. These results show that interference from a rewarding experience can counteract negative affective states. While memory-updating, induced by memory reactivation, involves a relatively small set of neurons, we also find that activating a large population of randomly labeled dorsal dentate gyrus neurons is effective in promoting reconsolidation. Importantly, memory-updating is specific to the fear memory. These findings implicate the dorsal dentate gyrus as a potential therapeutic node for modulating memories to suppress fear.

Funder

U.S. Department of Health & Human Services | National Institutes of Health

Evelyn F. McKnight Brain Research Foundation

U.S. Department of Defense

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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